无线传感器网络中加密数据的高效聚合

C. Castelluccia, Einar Mykletun, G. Tsudik
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引用次数: 614

摘要

无线传感器网络是由计算能力和能量有限的微型设备组成的自组织网络。对于这样的设备,数据传输是一项非常耗能的操作。因此,最小化每个设备发送的比特数对于WSN的生命周期至关重要。一种众所周知的方法是沿着从传感器到接收器的路径聚合传感器数据(例如,通过添加)。如果需要传感器和接收器之间的端到端隐私,聚合就变得特别具有挑战性。在本文中,我们提出了一个简单且可证明安全的加性同态流密码,它允许对加密数据进行有效的聚合。新的密码只使用模块化添加(具有非常小的模),因此非常适合cpu受限的设备。我们证明,基于该密码的聚合可以有效地计算感测数据的均值、方差和标准差等统计值,同时获得显著的带宽增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient aggregation of encrypted data in wireless sensor networks
Wireless sensor networks (WSNs) are ad-hoc networks composed of tiny devices with limited computation and energy capacities. For such devices, data transmission is a very energy-consuming operation. It thus becomes essential to the lifetime of a WSN to minimize the number of bits sent by each device. One well-known approach is to aggregate sensor data (e.g., by adding) along the path from sensors to the sink. Aggregation becomes especially challenging if end-to-end privacy between sensors and the sink is required. In this paper, we propose a simple and provably secure additively homomorphic stream cipher that allows efficient aggregation of encrypted data. The new cipher only uses modular additions (with very small moduli) and is therefore very well suited for CPU-constrained devices. We show that aggregation based on this cipher can be used to efficiently compute statistical values such as mean, variance and standard deviation of sensed data, while achieving significant bandwidth gain.
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